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Modeling Aggregate MAC Flow Throughput and Fairness in Non-Saturated IEEE 802.11 Based Wireless Mesh Networks

机译:在基于非饱和IEEE 802.11的无线网状网络中建模总MAC流吞吐量和公平性

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In this paper, we study the trade-off between the aggregate MAC flow throughput and the fairness in IEEE 802.11 based wireless mesh networks (WMNs) that utilize scheduling on top of the CSMA/CA access scheme. We use a toy WMN topology to allow us to understand easily this trade-off and propose an analytical model to study the interaction between contending links in this topology. Based on this model, we formulate the bandwidth scheduling problem as an aggregate MAC flow throughput maximization problem subject to the fairness requirements dictated by the scheduler. This study is dictated by the need to understand the limits of such scheduling algorithms which have proliferated in recent years to balance the throughput and fairness of WMNs without modifying the CSMA/CA protocol or the binary exponential backoff due to the non programmability of the MAC and backoff procedure in modern commercial Wi-Fi chipset. As an example, we evaluate our previously proposed bandwidth scheduling mechanism - the so-called distributed fair MAC scheduler (DFMS) to validate our model on one hand and demonstrate the efficiency of our scheduler on the other.
机译:在本文中,我们研究了在基于IEEE 802.11的无线网状网络(WMN)中,总MAC流吞吐量与公平性之间的权衡,该无线网状网络在CSMA / CA接入方案之上利用了调度。我们使用玩具WMN拓扑来使我们容易理解这种折衷,并提出一种分析模型来研究此拓扑中竞争链路之间的相互作用。基于此模型,我们将带宽调度问题公式化为总MAC流吞吐量最大化问题,这取决于调度程序规定的公平性要求。这项研究是由需要了解这种调度算法的局限性决定的,近年来,这种调度算法在平衡WMN的吞吐量和公平性而未修改CSMA / CA协议或由于MAC和PC的非可编程性而导致的二进制指数退缩的情况下迅速发展。现代商业Wi-Fi芯片组中的退避程序。例如,我们评估了我们先前提出的带宽调度机制-所谓的分布式公平MAC调度程序(DFMS),一方面验证了我们的模型,另一方面证明了调度程序的效率。

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